U-Blot® Phospho-RNA Polymerase II CTD Repeat YSPTSPS (Ser2) Rabbit mAb

Price range: $288.00 through $368.00

SKU: WT9095-100
Enter the quantity you would like, or drag the panel to find the quantity and price that best for you
Bulk QuoteAuthorize OEM & ODM

Product details

Background:
RNA polymerase II (RNAPII) is a large multi-protein complex that functions as a DNA-dependent RNA polymerase, catalyzing the transcription of DNA into RNA using the four ribonucleoside triphosphates as substrates. The largest subunit, RNAPII subunit B1 (Rpb1), also known as RNAPII subunit A (POLR2A), contains a unique heptapeptide sequence (Tyr1,Ser2,Pro3,Thr4,Ser5,Pro6,Ser7), which is repeated up to 52 times in the carboxy-terminal domain (CTD) of the protein. This CTD heptapeptide repeat is subject to multiple post translational modifications, which dictate the functional state of the polymerase complex. Phosphorylation of the CTD during the active transcription cycle integrates transcription with chromatin remodeling and nascent RNA processing by regulating the recruitment of chromatin modifying enzymes and RNA processing proteins to the transcribed gene. During transcription initiation, RNAPII contains a hypophosphorylated CTD and is recruited to gene promoters through interactions with DNA-bound transcription factors and the Mediator complex. The escape of RNAPII from gene promoters requires phosphorylation at Ser5 by CDK7, the catalytic subunit of transcription factor IIH (TFIIH). Phosphorylation at Ser5 mediates the recruitment of RNA capping enzymes, in addition to histone H3 Lys4 methyltransferases, which function to regulate transcription initiation and chromatin structure. After promoter escape, RNAPII proceeds down the gene to an intrinsic pause site, where it is halted by the negative elongation factors NELF and DSIF. At this point, RNAPII is unstable and frequently aborts transcription and dissociates from the gene. Productive transcription elongation requires phosphorylation at Ser2 by CDK9, the catalytic subunit of the positive transcription elongation factor P-TEFb. Phosphorylation at Ser2 creates a stable transcription elongation complex and facilitates recruitment of RNA splicing and polyadenylation factors, in addition to histone H3 Lys36 methyltransferases, which function to promote elongation-compatible chromatin. Ser2/Ser5-phosphorylated RNAPII then transcribes the entire length of the gene to the 3′ end, where transcription is terminated. RNAPII dissociates from the DNA and is recycled to the hypophosphorylated form by various CTD phosphatases.

Specifications

TargetPhospho-RNA Polymerase II CTD Repeat YSPTSPS (Ser2)
ReactivityHuman, Mouse, Rat
ApplicationWB, IHC-P, ChIP
MW(Calculated)217 kDa
MW(Observed)270 kDa
Host SpeciesRabbit
IsotypeIgG
ConjugateUnconjugated
ModificationPhosphorylation
Modified siteSer2
Recommended dilution ratioWB: 1:1000; IHC-P: 1:2000; ChIP: 6 μg/2×10⁶ cells
CompositionPBS, Glycerol, BSA
Source
Purification processProtein A affinity purification
Purity
StorageStore at -20°C. Avoid repeated freeze-thaw cycles
StabilityStable for 12 months from date of receipt / reconstitution.
Concentration
ClonalityRecombinant monoclonal
Clone NumberW-R66
Immunogenpolypeptide
Sequence
SpecificitySpecific for RNA Polymerase II only when phosphorylated at Ser2 of the CTD repeat
Gene namePOLR2A
Protein NameDNA-directed RNA polymerase II subunit RPB1
Alternative namePOLR2, RNA polymerase II largest subunit
Organism-1Human
Gene ID-15430
SwissProt-1P24928
Organism-2
Gene ID-2
SwissProt-2
Organism-3
Gene ID-3
SwissProt-3
Organism-4
Gene ID-4
SwissProt-4
Cellular LocalizationCytoplasm, Nucleus
Please login to post questions

Data Sheet

Download
Back to Top
Product has been added to your cart